Performance-Based Seismic Design of Reinforced Concrete Buildings: Advanced Modeling and Applications addresses the critical need for specialized knowledge and advanced techniques to conduct accurate structural response assessments, particularly for buildings in earthquake-prone regions or older edifices not originally designed to withstand seismic forces.
By systematically outlining state-of-the-art approaches for characterizing and predicting the behavior of key structural componentsâincluding beams, columns, beam-column joints, walls, coupling beams, and slab diaphragmsâsupported by real-world examples and case studies that illustrate their applicability, this essential reference resource makes complex seismic evaluation methodologies accessible to technical readers both in academia and industry.
The book focuses on nonlinear analysis models, integrating theory-based principles, contextual specifications, and fully validated experimental data to optimally maintain the integrity of new and existing buildings under variable forces.
The inclusion of performance-based seismic design strategies is also a prominent highlight, delivering a comprehensive framework for examining and strengthening reinforced concrete buildings against seismic threats.
With contributions from leading experts in the field from Korea, this volume imparts indispensable insights and leverages sophisticated tools necessary to progress seismic design and retrofit practices, enhancing safety and performance while simultaneously supporting long-term resilience in the built environment.
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